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Recent Developments in the Green Syntheses of Chalcogenide Based Semiconductor Nanoparticles

机译:硫族化物基半导体纳米粒子绿色合成的最新进展

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Background: Semiconductor nanocrystals, particularly metal-chalcogenides, being at the interface of chemistry, physics, biology and materials science, have fascinated researchers in the last few decades. These materials find attractive application perspectives in solar cells, low cost/large format microelectronics, optoelectronics, biological tags and so forth. Objective: The size-dependent band gap of these materials is well-known, widely studied and well appreciated. The shape, surface conditions of nanoparticles, band alignment and structural orientation of capping molecules are also equally important parameters in controlling the properties. Method: In this review, an attempt has been made to survey the recent work of green syntheses on metal-chalcogenide nanoparticles by different routes. The aqueous approach is an advantageous alternative to the conventionally used organometallic route, mainly due to its scalability, environmental friendliness, cost effectiveness and more importantly, the biocompatibility. Results: The synthetic protocols are being developed for tailoring the composition, size, shape and surface functionalization of these materials by aqueous route with an exceptionally high degree. An attempt has been made to compare the recently reported results of these materials that are mainly synthesized by greener approaches. Conclusion: The review summarizes general aqueous synthetic strategies to achieve high quality metal chalcogenides that are recently reported and finally, the future, perspectives of these materials are also discussed.
机译:背景:半导体纳米晶体,特别是金属硫属化物,处于化学,物理学,生物学和材料科学的交汇处,在过去的几十年中吸引了研究人员。这些材料在太阳能电池,低成本/大幅面微电子,光电子,生物标签等领域具有诱人的应用前景。目的:这些材料的尺寸相关带隙是众所周知的,已得到广泛研究并受到高度评价。纳米粒子的形状,表面条件,带状排列和封端分子的结构取向在控制性能方面也同样重要。方法:在这篇综述中,人们试图通过不同的途径研究金属硫族化物纳米颗粒上绿色合成的最新工作。水性方法是常规使用的有机金属路线的有利替代方案,主要是因为其可扩展性,环境友好性,成本效益以及更重要的是生物相容性。结果:正在开发合成方案,以通过水性途径以极高的程度定制这些材料的组成,尺寸,形状和表面功能化。已经尝试比较这些材料的最近报道的结果,这些结果主要是通过绿色方法合成的。结论:综述总结了最近报道的获得高质量金属硫属元素化物的一般水性合成策略,最后,还讨论了这些材料的未来。

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